Refine
Year of Publication
- 2019 (214) (remove)
Document Type
- Peer-Reviewed Article (48)
- Contribution to Periodical (47)
- Report (39)
- Part of a Book (32)
- Working Paper (18)
- Conference Object (12)
- Doctoral Thesis (10)
- Book (5)
- Master Thesis (3)
Division
Today more than 45 % of all energy-related CO2 emissions come from burning coal. Thus, reducing CO2 emissions from coal use is a necessity for reaching the targets of the Paris Agreement. This will not only pose challenges for coal consumers (restructuring of the energy system), but also for countries whose economy is strongly depending on the production of coal. This paper examines the role of coal in three countries, which are or were in recent years among the top coal exporters: Indonesia, Colombia and Vietnam. Understanding challenges and possible transition pathways in these countries will help to develop global strategies to reduce CO2 emissions from coal in the short to mid-term.
Das Kopernikus-Projekt "ENavi" hat im Forschungsschwerpunkt "Transformation des Stromsystems" untersucht, wie der Stromsektor zur Erreichung der Klimaziele beitragen kann. Aktuell gilt es, den Kohleausstieg ökonomisch effizient und ökologisch zu organisieren. Seine Ergebnisse hat das Team der von der Bundesregierung eingesetzten Kommission für Wachstum, Strukturwandel und Beschäftigung ("Kohlekommission") präsentiert.
Nowadays, the main impetus to apply additive manufacturing (AM) of metals is the high geometric flexibility of the processes and its ability to produce pilot or small batch series. In contrast, resource and energy intensities are often not considered as constraints, even though the turnout of additive manufacturing is high, at least compared to chip removing processes.
The study at hand analyses the material characteristics and environmental impacts of a hose nozzle as an example of a commercial product of simple geometry. The production routes turning (conventional manufacturing) and laser beam melting (additive manufacturing) are compared to each other in terms of natural resource use, climate change potential and primary energy demand. It is found, that the product shows a lower demand for natural resources when produced via AM, but higher carbon emissions and energy demand when using a steel, that is mainly (80%) produced from high-alloyed steel scrap. However, different case studies during the sensitivity analyses showed that a number of factors highly influence the results: the steel source as well as the source of electricity play a major role in determining the environmental performance of the production routes. The authors also found that other production processes (here cold forging of tubes) might be an eco-friendly alternative to both routes, if feasible from an economic point of view.
In regard to the material characteristics, experimental testing revealed that the material advantages of AM produced hose nozzles (in particular higher yield strength) are reduced after a solution heat treatment is applied to the as-produced material, in order to increase corrosion resistance. However, products that do not require this production step might benefit from the higher yield strength, as a lower wall thickness could be realised.
In recent years, most countries in the Middle East and North Africa (MENA), including Jordan, Morocco and Tunisia, have rolled out national policies with the goal of decarbonising their economies. Energy policy goals in these countries have been characterised by expanding the deployment of renewable energy technologies in the electricity mix in the medium term (i.e., until 2030). This tacitly signals a transformation of socio-technical systems by 2030 and beyond. Nevertheless, how these policy objectives actually translate into future scenarios that can also take into account a long-term perspective up to 2050 and correspond to local preferences remains largely understudied. This paper aims to fill this gap by identifying the most widely preferred long-term electricity scenarios for Jordan, Morocco and Tunisia. During a series of two-day workshops (one in each country), the research team, along with local stakeholders, adopted a participatory approach to develop multiple 2050 electricity scenarios, which enabled electricity pathways to be modelled using Renewable Energy Pathway Simulation System GIS (renpassG!S). We subsequently used the Analytical Hierarchy Process (AHP) within a Multi-Criteria Analysis (MCA) to capture local preferences. The empirical findings show that local stakeholders in all three countries preferred electricity scenarios mainly or even exclusively based on renewables. The findings demonstrate a clear preference for renewable energies and show that useful insights can be generated using participatory approaches to energy planning.
Im Energiesektor hat die Digitalisierung bereits viele Abläufe der Wertschöpfungskette verändert. Es besteht jedoch weiterhin erhebliches Potenzial zur Nutzung von digitalen Anwendungen. Insofern ist mit weiteren tiefgreifenden Veränderungen zu rechnen. Neben den zahlreichen Nutzen bestehen auch potenzielle negative Auswirkungen. Die so entstehenden Spannungsfelder müssen frühzeitig analysiert werden, um Lösungsoptionen für potenzielle Hindernisse zu erarbeiten um somit den größtmöglichen Nutzen der Digitalisierung erzielen zu können.
German energy transition : targets, current status, chances and challenges of an ambitious pathway
(2019)
With the "Energiewende", the German term for the transformation of the national energy system, the German government pursues ambitious goals, primarily but not only to reflect the climate change challenge and to react to the risks associated with the use of nuclear power plants. After launching the energy concept in mid-2011, which describes the "Energiewende" goals, Germany was perceived as an international pioneer in energy transition for many years and has been acknowledged for its braveness to combine ambitious greenhouse gas (GHG) mitigation targets with a phase out program for nuclear power plants. In this context, this article asks where Germany’s energy transition currently stands, what is planned next and how far the set targets have been achieved or where more action is required to stick to this pathway.
Weltweit trägt die Industrie direkt und indirekt etwa über ihren Bezug von Strom und Wärme rund 30 bis 40 Prozent zu den Treibhausgasemissionen bei. Auch in Deutschland liegt ihr Beitrag in einer ähnlichen Größenordnung1. Dabei sind insbesondere die Grundstoffindustrien (Stahl, Zement, Grundstoffchemie, Glas, Aluminium, Papier und andere) besonders energie- und emissionsintensiv. Gleichzeitig basiert der Energieeinsatz dieser Industrien bisher noch überwiegend auf fossilen Energien (und Müll). Zu den energiebedingten Emissionen kommen prozessbedingte Emissionen hinzu, die sich bei den heute üblichen Verfahren selbst bei Einsatz vollständig "grüner" Energien nicht vermeiden lassen. Grundstoffindustrien stellen Materialien für die Herstellung und Verarbeitung von Produkten zur Verfügung. Sie sind daher kein Selbstzweck, sondern tragen letztlich damit dazu bei, vielfältige Bedürfnisse abzudecken.